What the eq.wt of C7H6O3 and why?

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To determine the equivalent weight (eq.wt) of a compound, we need to consider its molecular formula and the stoichiometry of the chemical reaction in which it is involved.

The molecular formula of C7H6O3 represents a compound composed of 7 carbon atoms, 6 hydrogen atoms, and 3 oxygen atoms. To find its equivalent weight, we need to know how it reacts in a chemical reaction.

The equivalent weight is defined as the atomic or molecular weight of a substance divided by the number of equivalents of the reacting species involved in the reaction. An equivalent is a unit that relates to the amount of substance involved in a given chemical reaction.

1. Find the molar mass of the compound:
To find the molar mass of C7H6O3, we add up the atomic masses of each element in the compound:
(7 * atomic mass of carbon) + (6 * atomic mass of hydrogen) + (3 * atomic mass of oxygen)

2. Determine the reaction involved:
To calculate the eq.wt, we need to know the reaction in which C7H6O3 participates. Knowing the balanced equation is crucial to determine the number of equivalents for C7H6O3.

Once you have the balanced equation, check its stoichiometry to determine how many equivalents of C7H6O3 are involved in the reaction.

3. Divide the molar mass by the number of equivalents:
Finally, divide the molar mass of C7H6O3 by the number of equivalents involved in the reaction to obtain the equivalent weight.

Unfortunately, without the specific reaction and balanced equation involving C7H6O3, we cannot determine its equivalent weight. Please provide more information about the reaction or the context in which the equivalent weight is needed, and I can guide you through the calculation.